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Alteration of the oxygen-dependent reactivity of de novo Due Ferri proteins

  • Amanda J. Reig
  • , Marcos M. Pires
  • , Rae Ana Snyder
  • , Yibing Wu
  • , Hyunil Jo
  • , Daniel W. Kulp
  • , Susan E. Butch
  • , Jennifer R. Calhoun
  • , Thomas G. Szyperski
  • , Edward I. Solomon
  • , William F. Degrado
  • University of Pennsylvania
  • Ursinus College
  • Lehigh University
  • Stanford University
  • SUNY Buffalo
  • University of California at San Francisco
  • Scripps Research Institute

Research output: Contribution to journalArticlepeer-review

125 Scopus citations

Abstract

De novo proteins provide a unique opportunity to investigate the structure-function relationships of metalloproteins in a minimal, well-defined and controlled scaffold. Here, we describe the rational programming of function in a de novo designed di-iron carboxylate protein from the Due Ferri family. Originally created to catalyse the O 2 -dependent, two-electron oxidation of hydroquinones, the protein was reprogrammed to catalyse the selective N-hydroxylation of arylamines by remodelling the substrate access cavity and introducing a critical third His ligand to the metal-binding cavity. Additional second- and third-shell modifications were required to stabilize the His ligand in the core of the protein. These structural changes resulted in at least a 10 6 -fold increase in the relative rate between the arylamine N-hydroxylation and hydroquinone oxidation reactions. This result highlights the potential for using de novo proteins as scaffolds for future investigations of the geometric and electronic factors that influence the catalytic tuning of di-iron active sites.

Original languageEnglish
Pages (from-to)900-906
Number of pages7
JournalNature Chemistry
Volume4
Issue number11
DOIs
StatePublished - Nov 2012

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